Remote sensing data for monitoring agricultural production and economic activity: Application in Egypt


Book Description

This policy note showcases two examples on how remote sensing data can be used for monitoring agricultural production and economic activities. The first case aims to generate granular data on agricultural production, which remain scarce in Egypt and the MENA region. The second case demonstrates the potential of remote sensing data to monitor economic activities during the COVID19 pandemic. Based on these data and together with other recent findings, we provide the following recommendations to facilitate post-COVID-19 recovery in Egypt: ► Targeting of stimulus and recovery packages based on the economic repercussions experienced across geographies and sectors ► Identifying and supporting promising value chains which experienced a significant slowdown in economic activities ► Diversifying economic activities and markets to improve the resilience of agri-food systems. ► Investment in data infrastructure to monitor and respond to future shocks. This may be supported by scale up of digital solutions, which proved to be effective in sustaining business activities even during the pandemic.




Remote sensing data for monitoring agricultural production and economic activity: Application in Egypt [in Arabic]


Book Description

This policy note showcases two examples on how remote sensing data can be used for monitoring agricultural production and economic activities. The first case aims to generate granular data on agricultural production, which remain scarce in Egypt and the MENA region. The second case demonstrates the potential of remote sensing data to monitor economic activities during the COVID19 pandemic. Based on these data and together with other recent findings, we provide the following recommendations to facilitate post-COVID-19 recovery in Egypt: ► Targeting of stimulus and recovery packages based on the economic repercussions experienced across geographies and sectors ► Identifying and supporting promising value chains which experienced a significant slowdown in economic activities ► Diversifying economic activities and markets to improve the resilience of agri-food systems. ► Investment in data infrastructure to monitor and respond to future shocks. This may be supported by scale up of digital solutions, which proved to be effective in sustaining business activities even during the pandemic.




Remote Sensing in Precision Agriculture


Book Description

Remote Sensing in Precision Agriculture: Transforming Scientific Advancement into Innovation compiles the latest applications of remote sensing in agriculture using spaceborne, airborne and drones’ geospatial data. The book presents case studies, new algorithms and the latest methods surrounding crop sown area estimation, determining crop health status, assessment of vegetation dynamics, crop diseases identification, crop yield estimation, soil properties, drone image analysis for crop damage assessment, and other issues in precision agriculture. This book is ideal for those seeking to explore and implement remote sensing in an effective and efficient manner with its compendium of scientifically and technologically sound information. Presents a well-integrated collection of chapters, with quality, consistency and continuity Provides the latest RS techniques in Precision Agriculture that are addressed by leading experts Includes detailed, yet geographically global case studies that can be easily understood, reproduced or implemented Covers geospatial data, with codes available through shared links




Remote Sensing


Book Description




Review of the available remote sensing tools, products, methodologies and data to improve crop production forecasts


Book Description

Timely and reliable agricultural production forecasts are critical to make informed food policy decisions and enable rapid responses to emerging food shortfalls. Sub-Saharan Africa is subject to highly variable yield, production and consumption, occasioned by high climate variability, rapidly increasing populations, and limited financial capacity. This review examines the current status of the remote sensing (RS) tools, products, methodologies and data that can help to improve agricultural crop production forecasting systems.




Environmental Remote Sensing in Egypt


Book Description

This book presents a comprehensive selection of applications employed in environmental remote sensing using optical and thermal infrared satellite-sensors aiming to map natural resources, crops, groundwater, surface water, aquatic ecosystem, land degradation, air quality, renewable energy, regional resources, and climate-related geophysical processes. The technologies presented in this book also include satellite images, space-borne radar sensors focusing on the most versatile one, data from synthetic aperture radar (SAR), scatterometers and radar altimeters in Egypt. This volume also presents a thorough explanation of the remote sensing role showing physical fundamentals of the climate change phenomenon including gas emissions, and the impact on resources concerning the sustainable development of Egypt. Besides, the book includes an analysis of oil pollution in both Mediterranean and Red Seas This book is intended for environmental policymakers working in Egypt as well as scientists working with remote sensing technologies in highly populated arid regions.










Remote Sensing Applications for Agriculture and Crop Modelling


Book Description

Crop models and remote sensing techniques have been combined and applied in agriculture and crop estimation on local and regional scales, or worldwide, based on the simultaneous development of crop models and remote sensing. The literature shows that many new remote sensing sensors and valuable methods have been developed for the retrieval of canopy state variables and soil properties from remote sensing data for assimilating the retrieved variables into crop models. At the same time, remote sensing has been used in a staggering number of applications for agriculture. This book sets the context for remote sensing and modelling for agricultural systems as a mean to minimize the environmental impact, while increasing production and productivity. The eighteen papers published in this Special Issue, although not representative of all the work carried out in the field of Remote Sensing for agriculture and crop modeling, provide insight into the diversity and the complexity of developments of RS applications in agriculture. Five thematic focuses have emerged from the published papers: yield estimation, land cover mapping, soil nutrient balance, time-specific management zone delineation and the use of UAV as agricultural aerial sprayers. All contributions exploited the use of remote sensing data from different platforms (UAV, Sentinel, Landsat, QuickBird, CBERS, MODIS, WorldView), their assimilation into crop models (DSSAT, AQUACROP, EPIC, DELPHI) or on the synergy of Remote Sensing and modeling, applied to cardamom, wheat, tomato, sorghum, rice, sugarcane and olive. The intended audience is researchers and postgraduate students, as well as those outside academia in policy and practice.